Uv light–Induced Aggregation of Titania Submicron Particles



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UV Light–Induced Aggregation of Titania Submicron Particles

Figure 3.

 Measured particle mobility of the rutile and anatase submicron particles over time. The UV 

light was turned on at 0 h. The electric field strength was 0.99 V/mm. 

4.3. Discussion 

UV light–induced aggregation was observed in both aqueous rutile and anatase suspensions 

that contained submicron particles. Such a phenomenon was attributed to the strongly photocatalytic 

activities of TiO

2

, which is an intrinsic 



n

-type semiconductor with a wide bandgap (3.0–3.2 eV) [22]. 

Both rutile and anatase have been widely used as the photocatalysts for photoelectrochemical water 

splitting [8]. The wide bandgap of TiO

2

 determines the threshold of the light frequencies required for 



exciting electrons from the valence band to the conduction band. Therefore, a UV light source was 

required in those experiments. 

The changes of the Zeta potential over time can be used to interpret UV light–induced 

aggregation of TiO

2

 particles observed in the experiments. Zeta potential has been used as an index 



of stability of colloidal dispersions [18]. The magnitude of the Zeta potential indicates the affinity 

between a particle and its adjacent ones. As the Zeta potential approaches neutral, the particles will 

have less resistance to aggregation, and vice versa. The Zeta potential of TiO

2

 particles is strongly 



relevant to the background pH value (or proton concentration) and the measured negative values in 

DI water (pH 

 6.5) [18]. Upon UV irradiation, it is believed that hydroxyl groups (·OH) form on the 



TiO

2

 particle surfaces, resulting in a higher local proton concentration (lower local pH). 




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